The present invention involves a gaming device with a metronome system. The metronome system includes a CPU which reads game state data on ticks determined by a check-back rate. The CPU can cause sound file changes to occur at any time any tick occurs, thereby enabling a plurality of sound recordings to be interfaced on-beat or otherwise. The present invention provides gaming devices with enhanced sound and music capabilities, adding to a gaming device player's enjoyment and entertainment.
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106. A method of operating a gaming device, comprising the steps of:
(a) periodically conducting readings of event data at a certain rate; (b) detecting a first event on one of said readings; (c) playing a first sound file having a plurality of beats per unit time; (d) detecting a second event on one of said readings; and (e) playing a second sound file on one of the beats of the first sound file.
87. A gaming device comprising:
at least one processor; at least one speaker in communication with the processor; and at least one memory device in communication with said processor, said memory device storing a plurality of sound files, event data and means for directing the processor to play one of the sound recordings and cause an on-beat transition from the sound recording being played to a different sound recording.
30. An improved gaming device of the type in which: (a) at least one data processing means communicates with at least one memory device and at least one speaker; and (b) the data processing means plays a first sound file having a plurality of beats per unit time, wherein the improvement comprises:
at least one check-back rate enabling such data processing means to interface a second sound file with the first sound file on one of the beats of the first sound file.
31. A method of operating a gaming device, comprising the steps of:
(a) providing a plurality of sound files; (b) playing a first sound file having a plurality of beats per unit time; (c) providing a predetermined number of ticks per unit time; (d) reading game state data when each tick occurs; (e) enabling at least one sound-causing event to occur; and (f) using a second sound file to produce at least one sound change on one of the beats of the first sound file.
25. An improved gaming device of the type in which: (a) at least one data processing means communicates with at least one memory device and at least one speaker; and (b) the data processing means plays a first sound file having a plurality of beats per unit time, wherein the improvement comprises:
game state data, a check-back rate, beat count data and a second sound file, whereby the data processing means uses the game state data, check-back rate and beat count data to interface said first sound file and said second sound file on one of the beats of the first sound file.
1. A gaming device having a musical metronome system comprising:
data processing means; at least one memory device connected to said data processing means, said memory device storing a first sound file and a second sound file, said first sound file and said second sound file each having at least one beat, and said memory device storing a check-back rate; and at least one speaker, in communication with the data processing means, which produces sound based on the first sound file and the second sound file; whereby the data processing means causes the first sound file to be played, detects an event and uses the check-back rate to interface the second sound file and the first sound file on one of the beats of the first sound file.
49. A gaming device comprising:
data processing means; at least one memory device in communication with said data processing means, said memory device storing a first sound file having a plurality of beats per unit time, a second sound file having at least one beat, event data and means for directing the data processing means to conduct periodic readings of the event data at a certain rate; and at least one speaker in communication with the data processing means, wherein the data processing means causes the speaker to produce the first sound file, conducts periodic readings of the event data, detects an event on one of said readings and causes the speaker to produce the second sound file on one of the beats of the first sound file.
99. A gaming device comprising:
data processing means; at least one memory device in communication with said data processing means, said memory device storing a first sound file having a first tempo, a second sound file having a second tempo, event data and means for directing the data processing means to conduct periodic readings of the event data at a rate equal to the first tempo; and at least one speaker in communication with the data processing means, wherein the data processing means causes the first sound file to be played at the first tempo, conducts readings of the event data, detects an event on one of said readings, causes an on-beat transition from the first sound file to the second sound file and causes the second sound file to be played at the second tempo.
70. A gaming device comprising:
data processing means; at least one memory device in communication with said data processing means, said memory device storing a first sound file having a plurality of beats per unit time, a second sound file having at least one beat, event data and means for directing the data processing means to conduct periodic readings of the event data coinciding with the beats of the first sound file; and at least one speaker in communication with the data processing means, wherein the data processing means causes the first sound file to be played, conducts readings of the event data on each beat of the first sound recording, detects an event on one of said readings and causes the second sound file to be played on one of the beats of the first sound file.
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A portion of the disclosure of this patent document contains or may contain material which is subject to copyright protection. The copyright owner has no objection to the photocopy reproduction by anyone of the patent document or the patent disclosure in exactly the form it appears in the Patent and Trademark Office patent file or records, but otherwise reserves all copyright rights whatsoever.
The present invention relates in general to a gaming device, and more particularly to a gaming device which includes a metronome system for interfacing a plurality of sound recordings.
Contemporary gaming machines, such as slot machines, include a primary game and one or more bonus rounds. Typically, a bonus round begins when the player reaches a bonus triggering event in the primary game. In slot machines with reel-based primary games, the triggering event usually occurs when the player reaches a predetermined combination of symbols on the reels. Usually, the bonus scheme provides the player with an opportunity to gain a bonus value before the bonus round terminates.
Most of these gaming machines include computer systems which generate sounds and music at various times during the primary games and bonus rounds (at times referred to herein as "games"). The computer systems play various sound recordings when certain events occur in the games. A sound recording includes one or more sound effects and/or musical pieces. For example, often when the computer system is playing one musical piece, an event occurs, and the computer system switches to a different musical piece.
Switching sound recordings presents several problems. In the instant example, the game designer cannot control where the new musical piece will begin with respect to the current beat of the old musical piece. A typical result is an out-of-beat transition between the old piece of music and the new piece of music. In addition, game designers are unable to create sound schemes which involve multiple sound recordings which are played successively or together based upon a common timing system. Gaming machine sound schemes are consequently limited. To increase player enjoyment and excitement, it is desirable to provide players with new gaming machines with the capacity for more sophisticated sound schemes which involve the interface of multiple sound recordings.
The present invention overcomes the above shortcomings by providing a gaming device with a metronome system capable of interfacing different sound recordings on any tick of a regular, repeating interval. The term, interface, as used herein, includes switching, replacing combining, supplementing, splicing, overlaying or otherwise partially or wholly joining two or more sound recordings, temporarily or permanently.
In one embodiment, the metronome system of the present invention can be incorporated into a computer system of any gaming device which includes: a central processing unit (CPU); input and output devices; game read only memory (ROM); game random access memory (RAM); a sound card, including sound files and a sound processor; and a bus which enables all of these components to communicate. It should be appreciated that the metronome system can also be incorporated into other types of computer systems which do not include all of these components but which operate one or more gaming devices remotely.
In one embodiment of the metronome system of the present invention, the metronome system includes game code, music code and metronome code within the game ROM, and the game RAM includes metronome random access memory (RAM). The metronome RAM includes game state data, a check-back rate, beat count data and bar count data. The music code, which is preferably commercially available, is a set of instructions which the CPU uses to determine the type, duration and volume of tones to be played.
The metronome code is a set of instructions which the CPU uses to generate and store the game state data, check-back rate, beat count data and bar count data in the metronome RAM. The game state data is data which the CPU generates in response to particular sound-causing events which occur in the game. The CPU generates different data for each type of sound-causing event. For example, if a player makes a winning selection, the CPU may generate game state data specific to that sound-causing event. Preferably, the game state data includes data for the following sound-causing events: game start events, value-winning events, bonus triggering events, player selection events and game termination events. It should be appreciated, however, that the game state data can include data for other sound-causing events. The game state data also flags the CPU to conduct certain sound file changes, as described below.
The check-back rate is the component of the metronome system which plays the role of a physical metronome (a musical time-keeping device which marks time with ticks at regular intervals). The check-back rate is the rate at which the CPU checks or reads the game state data to detect the occurrence of sound-causing events. When the CPU makes such a reading, a tick or check-back (as referred to herein) is said to have occurred.
The check-back rate is preferably equal to the tempo of a sound recording. The tempo is the number of beats per second which occur in a sound recording. Therefore, if a sound recording had one beat per second, the CPU would read the game state data on every beat. In one embodiment, the CPU directs the sound card to switch two sound recordings in such a manner that the sound recordings are on-beat with one another. The check-back rate can, however, be set to any suitable rate, such that the CPU reads the game state data at subdivisions of beats or on a particular beat following a set of beats.
In musical terminology, it is common to refer to a set of beats as a measure bound by barlines or bars. A sound recording can consist of two or more measures which repeat in a loop. Each measure can be identified by the bar number at the beginning of the measure.
As will be discussed below, if the CPU reads the game state data on beats, there is a need to identify at which beat the CPU is reading the game state data. Similarly, there is a need to identify at which bar the CPU conducted its reading of the game state data. For this reason, the CPU generates beat count data and bar count data which is, in effect, a record of the current beat and bar being played.
In operation, the CPU preferably writes a predetermined check-back rate when a primary game or bonus round begins. However, it should be appreciated that the CPU can wait and write a -predetermined check-back rate after the primary game or bonus round begins. For example, the CPU can write a check-back rate at the same time the CPU begins to play a predetermined sound file (i.e., an entry musical piece for a game). In either case, the CPU preferably writes a check-back rate equal to the tempo of a sound recording. However, the metronome code can instruct the CPU to set the check-back rate to any other suitable rate.
Once the CPU writes a check-back rate, the CPU then reads the game state data at regular intervals or ticks determined by the check-back rate. The CPU also stores beat count data and bar count data each time the CPU reads the game state data. Once a sound-causing event occurs, the next time the CPU reads the game state data (i.e., on the next tick), the CPU will detect this event. The CPU then uses the metronome code to read the game state data for that particular event and then conduct specified sound file changes.
Preferably, the sound file changes include playing a different musical sound recording on the beat whereupon the CPU detected the sound-causing event, within a predetermined number of beats thereafter or on the beat following the upcoming bar. The sound file changes can also include stopping the current musical sound recording at the instant beat. For example, the game state data can instruct the CPU to make a file change on a particular beat in a particular measure (i.e., the first beat of bar one). Furthermore, the sound file changes can include increasing or decreasing the volume of the current musical sound recording. In addition to playing musical sound recordings, the sound file change can, instead, include playing a sound effect on any beat or bar, but preferably on the instant beat.
It should be appreciated that the metronome system of the present invention can be adapted to play a plurality of sound recordings simultaneously and when a sound-causing event occurs, to play a plurality of different sound recordings on beat with the earlier sound recordings or on any other tick whereupon the CPU reads the game state data.
The metronome system of the present invention provides gaming devices with the capacity to interface, change or switch sound recordings when certain game events occur, while making such change on a code-driven metronome tick. Preferably, the ticks correspond to the sound recording beats. In such case, using a predetermined check-back rate, the CPU of the metronome system detects sound-causing events and simultaneously plays a new sound recording on-beat with the initial recording. This type of invention provides gaming machine players with more interesting sounds and music and increases player enjoyment.
It is therefore an object of the present invention to provide a gaming device with a metronome system for interfacing sound recordings.
Other objects, features and advantages of the invention will be apparent from the following detailed disclosure, taken in conjunction with the accompanying sheets of drawings, wherein like numerals refer to like parts, elements, components, steps and processes.
Gaming Device Structure
Referring now to the drawings, two embodiments of the gaming device of the present invention are illustrated in
Gaming device 10 can incorporate any primary game such as slot, poker or keno, any of their bonus triggering events and any of their bonus round games. The symbols and indicia used on and in gaming device 10 may be in mechanical, electrical or video form.
As illustrated in
As shown in
At any time during the game, a player may "cash out"and thereby receive a number of coins corresponding to the number of remaining credits by pushing a cash out button 26. When the player "cashes out,"the player receives the coins in a coin payout tray 28. The gaming device 10 may employ other payout mechanisms such as credit slips redeemable by a cashier or electronically recordable cards which keep track of the player's credits.
Gaming device 10 also includes one or more display devices. The embodiment shown in
Each reel 34 displays a plurality of indicia such as bells, hearts, fruits, numbers, letters, bars or other images which preferably correspond to a theme associated with the gaming device 10. Furthermore, gaming device 10 preferably includes speakers 36 for making sounds or playing music.
With reference to
In addition to winning credits in this manner, preferably gaming device 10 also gives players the opportunity to win credits in a bonus round. This type of gaming device 10 will include a program which will automatically begin a bonus round when the player has achieved a qualifying condition in the game. This qualifying condition can be a particular arrangement of indicia on a display device. The gaming device 10 preferably uses a video-based central display device 30 to enable the player to play the bonus round. Preferably, the qualifying condition is a predetermined combination of indicia appearing on a plurality of reels 34. As illustrated in the five reel slot game shown in
The gaming device of the present invention includes a metronome system embodied in one or more computer systems used to operate a gaming device. The metronome system includes a particular configuration of metronome-specific memory which can be incorporated into any computer system of any gaming device, including, but not limited to, systems which operate in gaming devices locally and systems which remotely operate one or more gaming devices through one or more networks.
One embodiment of the metronome system 100, illustrated in
Sound card 106 includes sound random access memory (RAM) 112 which includes a plurality of sound files 114, identified as 114a, 114b and 114c. Sound files 114 can include any type of sound file readable by the CPU 102. Preferably, sound files 114 include digital wave files for musical sound recordings and sound effect recordings. In addition, sound card 106 includes a sound processor 116 which drives a mixer 118 and an analog to digital converter 120, thereby causing speakers 36 to generate sound. Mixer 118 enables the sound processor 116 to vary the volume of the sound recordings.
As illustrated in
CPU 102 is preferably a microprocessor or microcontroller-based platform which is capable of displaying images, symbols and other indicia such as images of people, characters, places, things and faces of cards. The memory device 104, communicating with CPU 102, includes game read only memory (ROM) 128 and game random access memory (RAM) 130, which at times communicate with one another.
Game ROM 128 includes game code 132, music code 134 and metronome code 136. Game code 132 in turn includes instructions which control the gaming device 10 so that it plays a particular game in accordance with applicable game rules and pay tables. The music code 134 includes a set of instructions which the CPU uses to determine the type, duration, and volume of tones to be played. Preferably, the music code 134 is a commercially available code such as music instrument digital interface (MIDI).
The metronome code 136 includes instructions which direct the CPU 102 how to generate, store, interpret and use the data stored in metronome random access memory (RAM) 138. Metronome RAM 138, included within the game RAM 130, includes the following data: game state data 140; check-back rate 142; beat count data 144; and bar count data 146. Metronome RAM 138 temporarily stores all of this data in the form of buffer memory. It should be appreciated that the present invention ,can be adapted so that the metronome RAM 138 includes other types of data which relate to the characteristics of a sound recording or the characteristics or quality of a plurality of interfacing sound recordings.
The game state data 140 is data generated by the CPU 102 when a sound-causing event occurs in a game. Any predetermined event can be a sound-causing event. Preferably, a sound-causing event occurs when the game starts, a player gains value or loses value, a bonus round is triggered and when the game ends. Sound-causing events can also occur when the player makes a selection, activates an input device 108 or other activator, or makes an advancement or progress in a game or for any other reason. Each type of sound-causing event is associated with its own game state data 140 which includes flag data. The flag data flags or directs the CPU 102 to make a particular sound file change, as described in detail below.
Further describing the metronome RAM 138, the check-back rate 142 is the rate at which the CPU 102 checks or reads the game state data 140. The process of the CPU 102 reading the game state data 134 at regular intervals or ticks plays the role of a metronome instrument. A game designer can set the check-back rate 142 to any rate suitable for a particular sound scheme or sound file 114. For instance, if a sound recording has a tempo of one hundred twenty beats per minute, a game designer can set the check-back rate 142 to one check per one-half second. As a result, a CPU 102 reading, check-back or a tick would occur on each beat. The metronome system can be programmed such that game ROM 128 instructs the CPU 102 to use different check-back rates 142 for different sound files 114 which have different tempos.
The ticks can be used to interface one or more sound files 114 in any configuration determined by a game designer. Though it is preferred that the ticks coincide with the beats of a sound recording, the check-back rate 142 can be set such that a click occurs on a beat following a predetermined bar (i.e., at the beginning of a predetermined measure), on subdivisions of beats or on off-beats.
To keep track of upon which beat a tick occurs in a sound recording, CPU 102 generates beat count data 144 each time a tick occurs. The beat count data 144 indicates the current beat number. This enables the CPU 102 to start any sound recording on the beat coinciding with a tick.
Similady, the bar count data 144 enables the CPU 102 to start any sound recording on the beat following any bar, for instance at the beginning of the first measure. Most sound recordings include a set number of measures (i.e., two measures) which are repeated continuously in a loop. Though the number of beats per measure is constant, the notes or sounds made in each measure may vary. Therefore, the first measure can sound different from the second measure. For this reason, a game designer may decide to start a new sound recording at the beginning of the first measure instead of the second measure.
An example of a basic sound recording with has two measures is shown in FIG. 3. The bars shown as dotted lines are indicated as "BAR 1" and "BAR 2." The graph includes the entire two measures of the sound recording.
This same sound recording is included in
For instance as shown in
An example of a game with three sound-causing events and the corresponding flag data is shown in
The second sound-causing event is the player winning a value. This event corresponds to a looped, ding-ding-ding-ding sound recording, identified as sound recording C. This sound recording is played on any beat one. Finally, the third sound-causing event is a theme change event, such as the player advancing from one screen to a different screen with a different graphical theme (i.e., football game graphics to baseball game graphics). The associated sound recording is the popular "Take Me Out to the Ball Game" song played on the beat following bar one, identified as sound recording D.
In
If a player makes a losing selection at the tick identified in
The theme change event is illustrated in FIG. 5D. In this example, sound recording A is a popular college football fight song, and sound recording D is the popular "Take Me Out To The Ball Game" baseball song. When the theme change event occurs at the tick identified in
As indicated by block 150 in
For example, the sound file change could be to play a particular sound file 114 immediately. If so, the CPU 102 will play the file on the same tick whereupon the CPU 102 detected the sound-causing event. In another example, the sound file change could also be to play a particular sound file 114 on the first beat following the first bar of a sound recording. In this case, the CPU 102 would wait and start the new sound file 114 on the tick corresponding to the specified beat.
Furthermore, as indicated by block 158, the CPU 102 then updates the check-back rate 142 with the rate specified in the game ROM 128 for the new sound file 114. If the game does not terminate, as indicated by diamond 160, the process of reading game state data on each tick repeats itself. If the game does terminate, and after the CPU 102 uses the sound card 106 to play any final sound recording, the metronome system shuts down along with the gaming device, as indicated by block 162.
Though various embodiments described herein involve the change or switch from a single sound recording to another, the metronome system of the present invention can be used to replace one or more sound recordings with one or more different sound recordings. Furthermore, the metronome system can be used to supplement or interface one or more sound recordings with one or more new sound recordings. All of these changes can be carried out on any predetermined tick of the metronome system.
It should be appreciated that although a CPU 102 and memory device 104 are preferable implementations of the present invention, the present invention can also be implemented using one or more application-specific integrated circuits (ASIC's) or other hard-wired devices, or using mechanical devices. Furthermore, although the CPU 102 and memory device 104 preferably reside on each gaming device 10 unit, it is possible to provide some or all of their functions at a central location such as a network server for communication to a playing station such as over a local area network (LAN), wide area network (WAN), Internet connection, microwave link, and the like.
The metronome system of the present invention includes a metronome-system which provides gaming devices with the capacity to interface one or more sound files with one or more new sound files. The sound file changes necessary to create the interfacing can occur on any predetermined tick of the metronome system. The metronome ticks preferably coincide with beats, ensuring that all sound file interfacing, such as switching, occurs on-beat. The metronome system of the present invention enhances the sophistication and quality of gaming device sound schemes and increases the entertainment and enjoyment experienced by gaming device players.
While the present invention has been described in connection with what is presently considered to be the most practical and preferred embodiments, it is to be understood that the invention is not limited to the disclosed embodiments, but on the contrary is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the claims. It is thus to be understood that modifications and variations in the present invention may be made without departing from the novel aspects of this invention as defined in the claims, and that this application is to be limited only by the scope of the claims.
Patent | Priority | Assignee | Title |
10115273, | Apr 09 2015 | IGT | Gaming system and method providing a game including a plurality of concentric wheels having deactivatable segments |
10140804, | Sep 20 2013 | IGT | Coordinated gaming machine attract via gaming machine cameras |
10576355, | Aug 09 2002 | 2BREATHE TECHNOLOGIES LTD | Generalized metronome for modification of biorhythmic activity |
10580251, | May 23 2018 | IGT | Electronic gaming machine and method providing 3D audio synced with 3D gestures |
10735862, | Aug 02 2018 | IGT | Electronic gaming machine and method with a stereo ultrasound speaker configuration providing binaurally encoded stereo audio |
10764660, | Aug 02 2018 | IGT | Electronic gaming machine and method with selectable sound beams |
11011015, | Jan 28 2019 | IGT | Gaming system and method providing personal audio preference profiles |
11158154, | Oct 24 2018 | IGT | Gaming system and method providing optimized audio output |
11354973, | Aug 02 2018 | IGT | Gaming system and method providing player feedback loop for automatically controlled audio adjustments |
6769985, | May 31 2000 | IGT | Gaming device and method for enhancing the issuance or transfer of an award |
6848996, | Oct 15 2001 | IGT | Gaming device with sound recording changes associated with player inputs |
6935955, | Sep 07 2000 | IGT | Gaming device with award and deduction proximity-based sound effect feature |
6968063, | Mar 11 2003 | IGT | Dynamic volume adjustment in a slot machine |
7105736, | Sep 09 2003 | IGT | Gaming device having a system for dynamically aligning background music with play session events |
7112139, | Dec 19 2001 | SG GAMING, INC | Gaming machine with ambient noise attenuation |
7258613, | Oct 11 2000 | IGT | Gaming device having changed or generated player stimuli |
7341512, | Mar 21 2001 | IGT | Computer system communicable with one or more gaming devices having a matching game with multiple rounds |
7355112, | Sep 09 2003 | IGT | Gaming device which dynamically modifies background music based on play session events |
7364508, | Jan 16 2003 | SG GAMING, INC | Gaming machine environment having controlled audio and visual media presentation |
7367886, | Jan 16 2003 | LNW GAMING, INC | Gaming system with surround sound |
7479063, | Oct 04 2000 | SG GAMING, INC | Audio network for gaming machines |
7494412, | Mar 21 2001 | IGT | Computer system communicable with one or more gaming devices having a matching game |
7526072, | Jan 12 2006 | Orec LLC | Audio device, system and method for archiving audio files based on distributed audio phone data received over a data network in encrypted or non-encrypted form |
7526736, | Jun 23 2000 | IGT | Gaming device having touch activated alternating or changing symbol |
7585219, | Sep 30 2004 | IGT | Gaming device having a matching symbol game |
7618323, | Feb 26 2003 | SG GAMING, INC | Gaming machine system having a gesture-sensing mechanism |
7666098, | Oct 15 2001 | IGT | Gaming device having modified reel spin sounds to highlight and enhance positive player outcomes |
7695363, | Jun 23 2000 | IGT | Gaming device having multiple display interfaces |
7699699, | Jun 23 2000 | IGT | Gaming device having multiple selectable display interfaces based on player's wagers |
7708642, | Oct 15 2001 | IGT | Gaming device having pitch-shifted sound and music |
7744458, | Aug 28 2000 | IGT | Slot machine game having a plurality of ways for a user to obtain payouts based on selection of one or more symbols (power pays) |
7766747, | Jan 16 2003 | LNW GAMING, INC | Gaming machine with surround sound features |
7785191, | Aug 28 2000 | IGT | Slot machine game having a plurality of ways for a user to obtain payouts based on selection of one or more symbols (power pays) |
7789748, | Sep 04 2003 | IGT | Gaming device having player-selectable music |
7867085, | Jan 16 2003 | LNW GAMING, INC | Gaming machine environment having controlled audio and visual media presentation |
7892091, | May 31 2000 | IGT | Gaming device and method for enhancing the issuance or transfer of an award |
7901291, | Sep 28 2001 | IGT | Gaming device operable with platform independent code and method |
8016674, | Oct 11 2000 | IGT | Gaming device having changed or generated player stimuli |
8043155, | Oct 18 2004 | IGT | Gaming device having a plurality of wildcard symbol patterns |
8052519, | Jun 08 2006 | SG GAMING, INC | Systems, methods and articles to facilitate lockout of selectable odds/advantage in playing card games |
8062115, | Apr 27 2006 | LNW GAMING, INC | Wagering game with multi-point gesture sensing device |
8100753, | May 23 2006 | SG GAMING, INC | Systems, methods and articles to facilitate playing card games with selectable odds |
8137176, | Oct 30 2008 | SG GAMING, INC | Configurable displays used, for example in gaming machines |
8162752, | Sep 20 2004 | LNW GAMING, INC | Virtual radio in a wagering game machine |
8172677, | Nov 10 2006 | LNW GAMING, INC | Wagering games using multi-level gaming structure |
8184824, | Mar 11 2003 | IGT | Differentiated audio |
8221218, | Jun 23 2000 | IGT | Gaming device having multiple selectable display interfaces based on player's wagers |
8251803, | Apr 30 2008 | LNW GAMING, INC | Overlapping progressive jackpots |
8272945, | Nov 02 2007 | LNW GAMING, INC | Game related systems, methods, and articles that combine virtual and physical elements |
8313374, | Feb 14 2003 | LNW GAMING, INC | Gaming machine having improved audio control architecture |
8408996, | Oct 11 2000 | IGT | Gaming device having changed or generated player stimuli |
8419524, | Oct 18 2004 | IGT | Gaming device having a plurality of wildcard symbol patterns |
8435118, | Nov 09 2007 | LNW GAMING, INC | Wagering game bonus sound integration |
8439752, | Nov 12 2009 | LNW GAMING, INC | Bonus trigger sounds building into a song |
8460090, | Jan 20 2012 | IGT | Gaming system, gaming device, and method providing an estimated emotional state of a player based on the occurrence of one or more designated events |
8491392, | Oct 24 2006 | IGT | Gaming system and method having promotions based on player selected gaming environment preferences |
8545320, | Jan 16 2003 | SG GAMING, INC | Gaming machine with surround sound features |
8591308, | Sep 10 2008 | IGT | Gaming system and method providing indication of notable symbols including audible indication |
8651939, | Oct 01 2004 | IGT | Gaming system having a plurality of adjacently arranged gaming machines and a mechanical moveable indicator operable to individually indicate the gaming machines |
8727866, | Oct 18 2004 | IGT | Gaming device having a plurality of wildcard symbol patterns |
8734245, | Nov 02 2007 | LNW GAMING, INC | Game related systems, methods, and articles that combine virtual and physical elements |
8740689, | Jul 06 2012 | IGT | Gaming system and method configured to operate a game associated with a reflector symbol |
8777744, | Sep 25 2012 | IGT | Gaming system and method configured to provide a musical game associated with unlockable musical instruments |
8821283, | Apr 20 2012 | LNW GAMING, INC | Wagering game audio ending in key of current state |
8911287, | Jan 20 2012 | IGT | Gaming system, gaming device, and method providing an estimated emotional state of a player based on the occurrence of one or more designated events |
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Patent | Priority | Assignee | Title |
4300225, | Aug 09 1979 | Disco beat meter | |
4344345, | Dec 26 1979 | Casio Computer Co., Ltd. | Automatic rhythm accompaniment system |
4660107, | Mar 08 1984 | Method and apparatus for cueing and pacing in audio and audio-visual work | |
4733593, | Mar 19 1987 | Mixed meter metronome | |
4876937, | Sep 12 1983 | Yamaha Corporation | Apparatus for producing rhythmically aligned tones from stored wave data |
4974483, | Nov 04 1987 | ENTERPRISES 33 LIMITED, A ISRAELI CORP | Metronome device |
5221801, | Nov 21 1990 | Roland Europe S.p.A. | Automatic accompaniment musical apparatus having programmable gradual tempo variation device |
5258574, | Nov 16 1990 | Yamaha Corporation | Tone generator for storing and mixing basic and differential wave data |
5266736, | Jun 21 1988 | Kawai Musical Instrument Mfg. Co., Ltd. | Interruption control apparatus for use in performance information processing system |
5430835, | Feb 15 1991 | SIERRA ENTERTAINMENT, INC | Method and means for computer sychronization of actions and sounds |
5472197, | Jul 18 1994 | SG GAMING, INC | Slot machine arm switch controller |
5515764, | Dec 30 1994 | Harmonic metronome | |
5703310, | Sep 29 1995 | Yamaha Corporation | Automatic performance data processing system with judging CPU operation-capacity |
5792972, | Oct 25 1996 | Muse Technologies, Inc. | Method and apparatus for controlling the tempo and volume of a MIDI file during playback through a MIDI player device |
5892171, | Oct 18 1996 | Yamaha Corporation | Method of extending capability of music apparatus by networking |
6146276, | Feb 07 1997 | Aim Management, Inc | Programmable electronic activity detector and command generator for electronic devices |
6175632, | Aug 09 1996 | INMUSIC BRANDS, INC , A FLORIDA CORPORATION | Universal beat synchronization of audio and lighting sources with interactive visual cueing |
6309301, | Aug 10 1998 | BANDAI NAMCO ENTERTAINMENT INC | Game communication with synchronization of soundtrack system |
JP2000296209, | |||
JP411216221, |
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